Remote controlling
Summary by NHIP
Portable Remote Control System
The portable apparatus remotely controls target electronic devices by receiving variable parameter values and time data. It transmits these values via an infrared radiation transmitter or an interface connected to a computer, with input restricted to an activated prompt position.
Claim Score by NHIP
Abstract
A portable remote control controls a target electronic device. The portable remote control includes a data receiver having an input port for receiving a variable parameter value of a target device, a real time clock for keeping the time of day, a wireless signal transmitter for transmitting the parameter values and the time of day.

Term
Term ended
Expired 24 December 2018, 7.8 years ago.
- Priority and filed
- Granted
- Expired
- Today
11 claims: 2 independent, 9 dependent
- 1Broadest claimClaim Score 81, broad(NHIP)Portable apparatus for remotely controlling a target electronic device comprising:a data receiver for inputting a variable parameter value of a target device;a real time clock for keeping the time of day;a wireless signal transmitter for transmitting said parameter value and said time of day.
- 9An electronic system comprising;a portable remote control device, said remote control device comprising a data receiver having an input port for receiving a variable parameter value in a plurality of substantially identical target devices from an external computer;a real time clock for keeping the time of day;wireless signal transmitter for transmitting said parameter values and time of day;and wherein each of said plurality of substantially identical target units comprises a signal receiver for receiving said parameter values from said portable remote control device;and parameter value setting circuitry for setting said parameter value and for setting said time of day.
Independent claims2
20 paragraphs, as filed
The invention relates to wireless remote controls for electronic devices
It is an important object of the invention to provide an improved remote control.
According to the invention, a portable apparatus for remotely controlling a target electronic device includes a data receiver for receiving a variable parameter value of a target device, a real time clock for keeping the time of day, a wireless signal transmitter for transmitting the parameter values and the time of day. The portable apparatus may be free of data entry keypad.
In another aspect of the invention, an electronic system includes a portable remote control device, which includes a data receiver for receiving a variable parameter value in a plurality of substantially identical target devices without the use of a keypad, a real time clock for keeping the time of day, and a wireless signal transmitter for transmitting the parameter values and time of day. The remote control device typically is free of a data entry keypad. Each of the plurality of substantially identical target units includes a signal receiver for receiving the parameter values from the remote control device, and parameter setting circuitry for setting the parameter value and for setting the time of day.
In still another aspect of the invention, a remote control system includes an input subsystem for inputting to the remote control system a parameter value for a controlled device. The input subsystem includes an interface with an inputting electronic device, disconnectable from the inputting device. The disconnectable interface is typically the exclusive manner for inputting the parameter value.
Other features, objects, and advantages will become apparent from the following detailed description, which refers to the following drawings in which:
FIG. 1 is a block diagram of a remote control system according to the invention;
FIG. 2 is a perspective view of a remote control according to the invention;
FIG. 3 is a schematic diagram of a circuit implementing the remote control of FIG. 1; and
FIG. 4 is a flow diagram of the transmission of parameter values to the target device and of the acquisition of parameter values from the parameter setting electronic device.
With reference now to the drawings and more particularly to FIG. 1, there is shown a block diagram of an embodiment of the invention. Remote control device <b>10</b> includes an input data port <b>12</b> coupled to a transmitter <b>16</b> by a microprocessor <b>17</b>. Also coupled to microprocessor <b>17</b> are real time clock <b>18</b> and prompt <b>19</b>. Target electronic device <b>20</b> includes a receiver <b>22</b> coupled to parameter setting circuit <b>24</b> and user settable clock <b>26</b>. A typical system implementing the invention would include a plurality of substantially identical target electronic devices <b>20</b>.
In operation, a controlling user sets device parameter values using a parameter setting electronic device, typically a computer running a parameter setting program. The device parameter values are input to remote control device <b>10</b> through input data port <b>12</b> and are stored in a memory associated with microprocessor <b>17</b>. A setting user prompts remote control device <b>10</b> through prompt <b>19</b>, causing microprocessor <b>17</b> to transmit parameter values stored in memory, and to transmit the time from real time clock <b>18</b>. Receiver <b>22</b> in target electronic device <b>20</b> receives the transmitted parameter values and the transmitted time, and transmits them to the parameter value setting circuit <b>24</b>. The parameter value setting circuit <b>24</b> uses the received values to set parameter values in the target electronic device <b>20</b> and to reset the user settable clock to the same time as in real time clock <b>18</b>.
In one embodiment, remote control <b>10</b> is a remote control device with an infrared transmitter. Remote control device <b>10</b> is typically free of data entry keys, so that data input port <b>12</b> is the sole manner by which the desired parameter values can be entered into remote control <b>10</b>. Target electronic device <b>20</b> may be a clock radio with an infrared receiver and with two alarms and station preset buttons, such as the WAVE radio commercially available from Bose Corporation of Framingham, Mass. Parameters may include designating whether or not user can reset the clock, whether or not user can use the second alarm, whether or not user can reset preset buttons, FM band presets, AM band presets, current radio volume or volume radio turns on to, current station or station radio turns on to, minimum radio volume, maximum radio volume, time format (e.g. standard, military) radio on/off, and whether or not alarms are cleared.
Referring now to FIG. 2, there is shown a perspective view of a physical implementation of remote control device <b>10</b> according to the invention. In FIG. 2, prime (′) designations refer to the physical implementations of corresponding elements of the block diagram of FIG. <b>1</b>. Portable plastic enclosure <b>32</b> encloses electronic circuitry. Bi-directional input port <b>12</b>′ provides a data terminal for receiving a signal cable (not shown) to a computer to receive parameter values from a computer. Pushbutton <b>19</b>′ implements prompt <b>19</b> and causes the microprocessor <b>17</b> of FIG. 1 to transmit parameter values through infrared lens <b>16</b>′. Light emitting diode <b>34</b> may provide information to a user, such as battery status or when transmitter <b>16</b> has transmitted a signal. If remote control device <b>10</b> is equipped with a receiver and target electronic device <b>20</b> is equipped with a transmitter, light emitting diode <b>34</b> may be used to indicate an acknowledgement by target electronic device <b>20</b> that the transmission has been received.
Referring now to FIG. 3, there is shown a schematic circuit diagram of an exemplary embodiment of remote control <b>10</b>. Portions of the circuit enclosed in dashed lines and identified by reference numerals perform the functions of the elements of FIG. 1 having corresponding reference numerals. Portions of the circuit not enclosed in dashed lines and identified by reference numerals perform ancillary functions, such as power processing.
Referring to FIG. 4, there is shown a flow diagram illustrating the transmission of parameter values to the target device and of the acquisition of parameter values from the parameter value setting electronic device. At step <b>40</b>, prompt <b>19</b> is activated. At step <b>42</b>, microprocessor <b>17</b> is powered. At step <b>44</b>, microprocessor <b>17</b> reads the time from real time clock <b>18</b>. At step <b>46</b>, the light emitting diode <b>34</b> is illuminated. At step <b>48</b>, microprocessor <b>17</b> transmits the parameter values through transmitter <b>16</b>. At step <b>50</b>, microprocessor <b>17</b> queries data input port <b>12</b> to see if there is a download command that has been issued by the parameter value setting electronic device. At step <b>52</b>, if there is a download command present, microprocessor <b>17</b> downloads the parameter values at step <b>54</b>. At step <b>52</b>, f there is no download command the procedure returns to step <b>50</b>, until the process is terminated by releasing prompt <b>19</b>.
An example of a situation in which the invention might be applied is a hotel in which many or all rooms have substantially identical clock radios. Hotel guests may desire to reset the clock to a time zone other than local, or may set the time ahead to help them be on time for meetings. Hotel guests may reset the station preset buttons, may leave the alarm on, may leave the volume too high, and the like.
In such a situation, a remote control according to the invention is advantageous because the setting of parameter values from a computer allows a hotel management to easily set the parameter values in several remote controls identically, without having to set the remote controls individually. The remote control according to the invention is further advantageous because being free of a data entry keypad helps prevent data entry errors; parameter values may only be set by the parameter value setting electronic device, and cannot be erroneously changed subsequently. The resetting of parameter values of the target devices can be done quickly and efficiently by a member of the housekeeping staff by pushing a single button.
A system according to the invention is advantageous, because the controlled units need not be connected to a network and because it does not require expensive and complicated networking software.
Other embodiments are within the claims.
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Priority claims2
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| US19980220630 | – | – | – |
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Numbers
- Publication, DOCDB
- 6696972
- Publication, EPODOC
- US6696972
- Application
- 9220630
- Application, DOCDB
- 22063098
- Application, EPODOC
- US19980220630
Titles
- English
- Remote controlling
Classification
- CPC, 2
- G08C19/28
- G04R20/00
- IPC, 1
- G08C19 28
- USPC, 6
- 340012250
- 340012220
- 348180000
- 348734000
- 368047000
- 368055000